PIR Ready SE7600 Series Programmable
& Non-Programmable Controllers
for Commercial HVAC Applications
CONTENTS
Product Overview 2
PID History Revision Table 2
Controller Objects 3
SNVTs and SCPTs Table Per Model 4
Input Network Variables (nvi’s) Description 7
Output Network Variables (nvo’s) Description 9
Configuration Properties (nci’s) Description 11
Integration
Global Commands 16
Graphic User Interface (GUI) Objects 17
Configuration Property Objects 18
Wiring Guide
Overview 18
Network Configuration 18
Maximum Number Of Devices 19
Maximum Cable Length 19
Repeaters 19
Terminators 19
Network Adapter 20
Software FIles 20
Device Identification 21
Tips And Things You Need To Know 22
Troubleshooting Section 22
All brand names, trademarks and registered trademarks are the property of their respective owners. Information contained within this document is subject to change without notice.
The SE7600 PI controller family is specifically designed for single stage and
multi-stage control of heating/cooling equipment such as roof top and selfcontained units. The product features an intuitive, menu-driven, back-lit LCD
display, which walks users through the programming steps, making the process
extremely simple. Accurate temperature control is achieved due to the product’s PI time proportional control algorithm, which virtually eliminates temperature offset associated with traditional, differential-based controllers.
All models contain two digital inputs, which can be set by the user to monitor
filter status, activate a remote temporary occupancy switch, and/or used as
a general purpose service indicator. In addition, depending on the model, up
to three remote sensor inputs are available. All models contain a SPST auxiliary contact, which can be used to control lighting or disable the economizer
function and a discharge-air sensor input. For more advanced applications, an
economizer control logic has been integrated onto the controller for use with
proportional damper economizer actuators.
The controllers also are compatible with the new Schneider Electric PIR
cover accessories. Controllers equipped with a PIR cover provide advanced
active occupancy logic, which will automatically switch occupancy levels from
occupied to unoccupied as required by local activity being present or not. This
advanced occupancy functionality provides advantageous energy savings
during occupied hours without sacrificing occupant comfort. All controllers can
be ordered with or without a factory installed PIR cover.
SE760 0 Series
PID HISTORY REVISION TABLE
XIF, APB and NXE File Names and Corresponding PIDs. This manual information
is to be used only with the current released SE7600 PIR ready controllers.
Used on current
released controller
PIR Ready SE7600 SeriesSE76_PIR.XIFRev 3.080:00:C5:55:00:04:04:21
This manual information is NOT to be used with the previously released SE7600
controllers.
Previously released
controller
Non-RoHS SE7600 SeriesSE7600.XIFRev 2.0 to 2.5 80:00:C5:55:00:04:04:02
RoHS SE7600 SeriesSE7600r.XIFRev 2.0 to 2.5 80:00:C5:55:00:04:04:12
All brand names, trademarks and registered trademarks are the property of their respective owners. Information contained within this document is subject to change without notice.
Please see the manual for details.
Plug-in for configuration provided.
All brand names, trademarks and registered trademarks are the property of their respective owners. Information contained within this document is subject to change without notice.
All brand names, trademarks and registered trademarks are the property of their respective owners. Information contained within this document is subject to change without notice.
14 d.hp_comfort_or_economy_modeEnumeration Set Used:
15d.econo mechanical_cool_enableEnumeration Set Used:
16hp compressor_auxheat_interlockEnumeration Set Used:
16nciHvacTypeSNVT_hvac_typeXXXXXXXX
17nciSccModelUNVT_model_numbeXXXXXXXX
1Controller Modelxxxxxxxx
2Software Versionxxxxxxxx
18nvoSpaceTempSNVT_temp_pXXXXXXXX
19nvoUnitStatus
1 modexxxxxxxx
2 heat_output_primaryxxxxxxxx
3 heat_output_secondaryN/AN/AN/AN/AN/AN/Axx
4 cool_outputxxxxxxxx
5 econo_outputxxN/AN/AN/AN/AN/AN/A
6 Fan_outputxxxxxxxx
7 in_alarmxxxxxxxx
20nvoDischAirTemp
21nvoEffectOccup
UNVT_cfg_2_rtu_hp
input_cfg_model_d_t
input_cfg_model_d_t
aux_contact_cfg_t
nb_of_events_t
off_on_state_t
rev_valve_b_t
nb_stages_t
nb_stages_t
mode_t
off_on_state_t
off_on_state_t
SNVT_hvac_status
SNVT_temp_p
SNVT_occupancy
XXXXN/AN/AXX
xxxxxxxx
xxxxxxxx
xxxxxxxx
xN/AxN/AxN/AxN/A
xN/AxN/AxN/AxN/A
N/AN/AN/AN/AN/AN/Axx
xxxxN/AN/AN/AN/A
xxxxN/AN/Axx
N/AN/AN/AN/AN/AN/Axx
xxN/AN/AN/AN/AN/AN/A
N/AN/AN/AN/AN/AN/Axx
XXXXXXXX
XXXXXXXX
XXXXXXXX
SE7600A5x45E
SE7652H5x45E
5
SE7600H5x45E
All brand names, trademarks and registered trademarks are the property of their respective owners. Information contained within this document is subject to change without notice.
For all non heatpump models, associate with UNVT_thermo_state_rtu
1 fan_outputTrue bit index 2xxxxxxxx
2 cooling_stage_1True bit index 3xxxxxxxx
3 cooling_stage_2True bit index 4xxxxN/AN/Axx
4 auxiliary_contactTrue bit index 5xxxxxxxx
5 heating_stage_1True bit index 6xxxxxxxx
6 heating_stage_2True bit index 7xxxxxxxx
7 service_alarmTrue bit index 12xxxxxxxx
8 filter_alarmTrue bit index 13xxxxxxxx
9 di2_direct_statusTrue bit index 17xxxxxxxx
10 di1_direct_statusTrue bit index 18xxxxxxxx
11 set_clock_alarmTrue bit index 22xN/AxN/AxN/AxN/A
12 frost_protection_alarmTrue bit index 23xxxxxxxx
13 local_pir_motionTrue bit index 24xxxxxxxx
14 fan_lock_alarmTrue bit index 25
For all heatpump models, associate with UNSE_thermo_state_hp
1 fan_outputTrue bit index 2xxxxxxxx
2 compressor_stage_1True bit index 3xxxxxxxx
3 compressor_stage_2True bit index 4xxxxN/AN/Axx
4 auxiliary_contactTrue bit index 5xxxxxxxx
5 heating_stage_1True bit index 6xxxxxxxx
6reversing valveTrue bit index 7xxxxxxxx
7 service_alarmTrue bit index 12xxxxxxxx
8 filter_alarmTrue bit index 13xxxxxxxx
9 di2_direct_statusTrue bit index 17xxxxxxxx
10 di1_direct_statusTrue bit index 18xxxxxxxx
11 set_clock_alarmTrue bit index 22xN/AxN/AxN/AxN/A
12 frost_protection_alarmTrue bit index 23xxxxxxxx
13 local_pir_motionTrue bit index 24xxxxxxxx
14 fan_lock_alarmTrue bit index 25
23nvoEffectSetptSNVT_temp_pXXXXXXXX
24nvoSetpointSNVT_temp_pXXXXXXXX
25nciSndHrtBtSNVT_time_secXXXXXXXX
26nciMinOutTmSNVT_time_secXXXXXXXX
27nciRcvHrtBtSNVT_time_secXXXXXXXX
28nciMajVerSCPT_maj_verXXXXXXXX
29nciMinVerSCPT_min_verXXXXXXXX
30nciLocationSNVT_str_ascXXXXXXXX
UNVT_thermo_state_rtu
UNVT_thermo_state_hp
SE7652A5x45E
SE7656B5x45E
SE7605B5x45E
SE7652B5x45E
SE7600B5x45E
XXXXXXXX
SE7600A5x45E
SE7652H5x45E
SE7600H5x45E
All brand names, trademarks and registered trademarks are the property of their respective owners. Information contained within this document is subject to change without notice.
This input network variable provides a network remote temperature value
to the controller. When linked or written to, the internal temperature reading
(internal sensor) is no longer used.
Valid Range: –40 to 122°F (–40 to 50°C)
Default Null (release) Value: 621.81°F (327.67°C or 0x7FFF)
This network variable is subject to the Receive HeartBeat Time,
nviRcvHrtBt.
This input network variable provides outdoor air temperature information
to the controller from a network value temperature value. If a valid value is
present, it will be automatically displayed at the controller; the reading of
the physical temperature sensor is ignored.
Valid Range: –40 to 122°F (–40 to 50°C)
Default Null (release) Value: 621.81°F (327.67°C or 0x7FFF)
This input network variable is used to command the Space Comfort
Controller into different occupancy modes.It is typically set by a supervisory
node to manually control occupancy modes, or to override the scheduled
occupancy.
Default Null Value: OC_NUL = 0xFF
Valid Range:
0 = OC_OCCUPIED *
1 = OC_UNOCCUPIED )
2 = OC_BYPASS – Not Used
3 = OC_STANDY – Not Used
0xFF = OC_NUL (Release to internal occupancy)**
* OC_OCCUPIED and OC_UNOCCUPIED commands will always have full
authority over the local occupancy routines of the controller may they be a
local input or a PIR cover.
** OC_NUL command will release the controller to use its own internal
occupancy routine driven from one of the digital input or a PIR cover
installed on board.
Room
Temperature
Outdoor Air
Temperature
Occupancy
Command
network input
SNVT_temp_p
nviSpaceTemp
network input
SNVT_temp_p
nviOutdoorTemp
network input
SNVT_occupancy
nviOccManCmd
7
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